Triolo Antonio, Altamura Maria, Dimoulas Tula, Guidi Antonio, Lecci Alessandro, Tramontana Manuela
Menarini Ricerche Spa, via Rismondo 12A 50131 Firenze, Italy.
J Mass Spectrom. 2005 Dec;40(12):1572-82. doi: 10.1002/jms.934.
An important aspect in drug discovery is the early structural identification of the metabolites of potential new drugs. This gives information on the metabolically labile points in the molecules under investigation, suggesting structural modifications to improve their metabolic stability, and allowing an early safety assessment via the identification of metabolic activation products. From an analytical point of view, metabolite identification still remains a challenging task, especially for in vivo samples, in which they occur at trace levels together with high amounts of endogenous compounds. Here we describe a method, based on LC-ion trap tandem MS, for the rapid in vivo metabolite identification. It is based on the automatic, data-dependent acquisition of multiple product ion MS/MS scans, followed by a postacquisition search, within the entire MS/MS data set obtained, for specific neutral losses or marker ions in the tandem mass spectra of parent molecule and putative metabolites. One advantage of the method is speed, since it requires minimum sample preparation and all the necessary data can be obtained in one chromatographic run. In addition, it is highly sensitive and selective, allowing detection of trace metabolites even in the presence of a complex matrix. As an example of application, we present the studies of the in vivo metabolism of the compound MEN 15916 (1). The method allowed identification of monohydroxy (M + H = m/z 655), dihydroxy (M + H = m/z 671), and trihydroxy (M + H = m/z 687) metabolites, as well as some unexpected biotransformation products such as a carboxylic acid (M + H = m/z 669), a N-dealkylated metabolite (M + H = m/z 541), and its hydroxy-analog (M + H = m/z 557).
药物研发中的一个重要方面是对潜在新药代谢物进行早期结构鉴定。这能提供有关所研究分子中代谢不稳定点的信息,为改善其代谢稳定性指明结构修饰方向,并通过鉴定代谢活化产物进行早期安全性评估。从分析角度来看,代谢物鉴定仍是一项具有挑战性的任务,尤其是对于体内样品,其中代谢物与大量内源性化合物一起以痕量水平存在。在此,我们描述一种基于液相色谱 - 离子阱串联质谱的方法,用于快速进行体内代谢物鉴定。该方法基于自动、数据依赖的方式采集多个产物离子的质谱/质谱扫描,随后在整个获得的质谱/质谱数据集中进行采集后搜索,以寻找母分子和假定代谢物的串联质谱中的特定中性丢失或标记离子。该方法的一个优点是速度快,因为它所需的样品制备最少,且所有必要数据可在一次色谱运行中获得。此外,它具有高灵敏度和选择性,即使在复杂基质存在的情况下也能检测到痕量代谢物。作为应用实例,我们展示了对化合物MEN 15916(1)的体内代谢研究。该方法鉴定出了单羟基(M + H = m/z 655)、二羟基(M + H = m/z 671)和三羟基(M + H = m/z 687)代谢物,以及一些意外的生物转化产物,如羧酸(M + H = m/z 669)、N - 脱烷基代谢物(M + H = m/z 541)及其羟基类似物(M + H = m/z 557)。